IP Library Granted Patent US 12709518
Granted Patent B2
US 12709518 · App. 17/235,145 · Granted Aug 18, 2026

Elevator safety monitoring system, elevator system, elevator drive unit, and method for operating an elevator

Inventors: Tapani Talonen (Helsinki, FI); Kari Rahkonen (Helsinki, FI); Tapio Siironen (Helsinki, FI); Mikko Viljanen (Helsinki, FI)
Assignee: KONE CORPORATION
B66B5/0031B66B1/32B66B1/3492B66B5/028B66B5/06
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Quick Facts
Patent No.
US 12709518
App. No.
17/235,145
Granted
Aug 18, 2026
Kind
B2
Abstract

An elevator safety monitoring system, an elevator system, an elevator drive unit, and a method for operating an elevator are presented. The elevator safety monitoring system includes an elevator car absolute position and speed feedback device, a safety monitor connected to the absolute position and speed feedback device, and a safety zone extending inside an elevator shaft. The safety zone is associated with an allowable maximum speed of an elevator car, wherein the allowable maximum speed is lower than a rated speed of an elevator car outside the safety zone, wherein the safety monitor is configured to determine a slowdown failure of the elevator car approaching the safety zone, and, upon the determination of the slowdown failure, command an actuator to decelerate the elevator car to the allowable maximum speed.

Claims (39)

1 . An elevator safety monitoring system comprising:

an elevator car absolute position and speed feedback device;

a safety monitor connected to the absolute position and speed feedback device;

a safety device fixed into and relative to an elevator shaft; and

a safety zone extending inside an elevator shaft, the safety zone being delimited by means of the safety device,

wherein the safety zone is associated with an allowable maximum speed of an elevator car, wherein the allowable maximum speed is lower than a rated speed of the elevator car outside the safety zone,

wherein the safety device is configured to change between an activated state and a non-activated state, in an activated state the safety device is arranged to extend to a section of the elevator shaft in which the elevator car is allowed to be moved during normal operation of the elevator and to obstruct movement of the elevator car into the safety zone, thereby establishing a safety space into the safety zone, and in a non-activated state the safety device is arranged to allows movement of the elevator car into the safety zone, and

wherein the safety monitor is configured to determine a slowdown failure of the elevator car approaching the safety zone, and, upon the determination of the slowdown failure, command an actuator to decelerate the elevator car to the allowable maximum speed.

2 . The elevator safety monitoring system of claim 1 , wherein the safety zone extends to a section of the elevator shaft, the section being allocated to elevator service during normal elevator operation.

3 . The elevator safety monitoring system of claim 2 , wherein the safety device is dimensioned to absorb kinetic energy of the elevator car moving with a full load at the allowable maximum speed.

4 . The elevator safety monitoring system of claim 2 , wherein the safety device is arranged so that, if in the activated state, it is operated to decelerate the elevator car or the elevator car comes in contact with it at maximum at the allowable maximum speed.

5 . The elevator safety monitoring system of claim 2 , wherein the safety monitor is configured to decelerate the elevator car, if the elevator car approaches the safety zone with a speed exceeding a speed limit, wherein a speed monitor is arranged to provide a command to operate the actuator.

6 . The elevator safety monitoring system of claim 1 , wherein the safety device is dimensioned to absorb kinetic energy of the elevator car moving with a full load at the allowable maximum speed.

7 . The elevator safety monitoring system of claim 6 , wherein the safety device is arranged so that, if in the activated state, it is operated to decelerate the elevator car or the elevator car comes in contact with it at maximum at the allowable maximum speed.

8 . The elevator safety monitoring system of claim 6 , wherein the safety monitor is configured to decelerate the elevator car, if the elevator car approaches the safety zone with a speed exceeding a speed limit, wherein a speed monitor is arranged to provide a command to operate the actuator.

9 . The elevator safety monitoring system of claim 1 , wherein the safety device is arranged so that, if in the activated state, it is operated to decelerate the elevator car or the elevator car comes in contact with it at maximum at the allowable maximum speed.

10 . The elevator safety monitoring system of claim 1 , wherein the safety monitor is configured to decelerate the elevator car, if the elevator car approaches the safety zone with a speed exceeding a speed limit, wherein a speed monitor is arranged to provide a command to operate the actuator.

11 . The elevator safety monitoring system of claim 1 , wherein the safety zone is at an end of the elevator shaft.

12 . The elevator safety monitoring system of claim 1 , wherein the determination of the slowdown failure comprises comparing the speed of the elevator car to a speed limit, the speed limit configured to decrease to a value of the allowable maximum speed-when approaching the safety zone from a rated speed zone of the elevator shaft.

13 . The elevator safety monitoring system of claim 1 , wherein the actuator is a hoisting machinery brake or an elevator car brake.

14 . The elevator safety monitoring system of claim 1 , wherein the safety device is a movable stop.

15 . The elevator safety monitoring system of claim 1 , wherein the safety device is an automatically pre-triggered safety device.

16 . The elevator safety monitoring system of claim 1 , further comprising a safety switch that in an activated state causes an emergency stop of an elevator, the safety switch being disposed to an extension of the safety zone to cause emergency stop of the elevator already before arrival of the car at the safety zone.

17 . An elevator system comprising:

the elevator safety monitoring system of claim 1 ;

the elevator car movable in the elevator shaft; and

the safety device for establishing a temporary safety space into a safety zone.

18 . An elevator comprising:

the elevator safety monitoring system of claim 1 ;

the elevator car; and

an elevator drive unit comprising:

an input for receiving absolute position and speed information of the elevator car;

a processing unit configured to calculate a motion profile of the elevator car, wherein the elevator car is configured to be driven by the elevator drive unit according to the motion profile, the motion profile including a rated speed portion and a safety zone portion, wherein the maximum speed of the safety zone portion is lower than the rated speed of the rated speed portion.

19 . The elevator of claim 18 , wherein the elevator drive unit is configured to select the maximum speed of the safety zone portion based on an allowable maximum speed associated with the safety zone.

20 . A method of operating the elevator according to claim 18 , the method comprising:

receiving, at a control unit of the elevator, a request to drive an elevator car to a destination;

generating, at the control unit, an elevator car motion profile to serve the request, the motion profile including at least an acceleration, a rated speed, and a deceleration of the elevator car;

determining, by the control unit, if there is a safety zone within a route of the elevator car to the destination, and if there is, then

including a safety zone portion into the elevator car motion profile for covering the safety zone, wherein the speed of the safety zone portion is lower than the rated speed in the motion profile.